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| number = ML20011D968 | | number = ML20011D968 | ||
| issue date = 12/31/1989 | | issue date = 12/31/1989 | ||
| title = Core Operating Limits Rept for LaSalle County Station Unit 1,Reload 3 (Cycle 4) | | title = Core Operating Limits Rept for LaSalle County Station Unit 1,Reload 3 (Cycle 4) | ||
| author name = | | author name = | ||
| author affiliation = COMMONWEALTH EDISON CO. | | author affiliation = COMMONWEALTH EDISON CO. | ||
| Line 18: | Line 18: | ||
=Text= | =Text= | ||
{{#Wiki_filter:. | {{#Wiki_filter:. | ||
y1 | y1 OS Core Operattag Limits Report for LaSalle County Station Unit 1, Reload 3 (Cycle 4) i | ||
OS Core Operattag Limits Report for LaSalle County Station Unit 1, Reload 3 (Cycle 4) i | . ) | ||
9001030253 891222 N'DR ADOCK 05000373 p | |||
9001030253 891222 N'DR | PDC 2lIREP | ||
.i w. | |||
} | |||
t CORE OPERATING LIMITE REPORT t | |||
Iannancz or enamazz sinantr 5 | |||
i l | |||
l l | l l | ||
I l | I l | ||
Affected | Affected Affected Date l | ||
Reetlen P-- | |||
= | |||
Bi-- ev a f ek===a i | |||
i | 111 111-Orlain=1 famna (cvela 4) 12/89 i | ||
LaSalle County - Unit 1 | l l | ||
1 | t 4 | ||
i i | |||
i 1 | |||
T LaSalle County - Unit 1 i | |||
Cycle 4 1 | |||
.s j | |||
+ | |||
3 l | |||
i J | |||
CORE OPERATING LIMITE RDORT TABLE OF CGfTENTE t | |||
F.SSR 111 | |||
....~.:...... | |||
1.0 | REFERENCES. | ||
4 | iv LIST OF FIGURE 8 v, | ||
LIST OF TABLES. | |||
4.0 | 1.0 AVERAGE PLANAR LINEAR REAT GENERATICII RATE (3/4.2.1). | ||
1-1 1-1 1.1 Technical Specification Reference.. | |||
i 1 | 1-1 1.2-Description. | ||
4 2.0 MINIMUM CRITICAL PONER RATIO (3/4.2.3). | |||
2-1 2-1 2.1 Technical Specification Reference. | |||
2-1 2.2 Description. | |||
3.0 LINEAR NEAT GI2tERATICEI RATE (3/4.2.4) 3-1 3.1 Technical Specificat' ion Reference. | |||
3-1 3.3 Description. | |||
3 ' | |||
4.0 CCEtTROL ROD WITHDRAWAL BLOCK INSTRUNI2tTATION (3/4.3.6). | |||
4-1 4-1 4.1 Technical. Specification Reference. | |||
4-1 4.2 Description. | |||
LaSalle County - Unit 1 11 Cycle 4 i | |||
i 1 | |||
i, | |||
;l | |||
I 1 | I 1 | ||
s- | s-h COSE OPERATIEG LIMITE REPORT REFERENCEE f | ||
h COSE OPERATIEG LIMITE REPORT REFERENCEE f | 1. | ||
Comunonwealth Edison Company Docket No. 50-374, LaSalle County Station, Unit 1 racility Operating License, License No. NPF-11. | |||
2. | |||
t | Letter from D. M. Crutchfield to All Power Reactor Licensees and Applicants, Generic Letter 88-16s.Concernitg the Removal of' Cycle-Specific r | ||
Parsmoter Limits from Technical Specifications, dated October 4, 1988. | |||
Reload 3 (Cycle 4), 23A5972, Rev. O, June 1989. | t 3. | ||
Supplemental Reload License Submittal for LaSalle County Station, Unit 1. | |||
Reload 3 (Cycle 4), 23A5972, Rev. O, June 1989. | |||
4. | |||
l 1 | LaSalle County Station, Units 1 and 2, SAFER /GESTR LOCA Loss-of-Coolant-Accident Analysis, NEDC, 31510P (latest approved version). | ||
i LaSalle County - Unit 1 | 5. | ||
General Electric Standard Application for Reactor Fuel (GESTAR), | |||
NEDE-24011-P-A (latest approved version). | |||
l 1 | |||
i LaSalle County - Unit 1 111 Cycle 4 l | |||
ZNLEP | ZNLEP | ||
~ | |||
i i | i i | ||
a I | a I | ||
core OPERATING LIMITS REPORT | core OPERATING LIMITS REPORT LIET or PfaumEE | ||
~ | |||
LIET or PfaumEE | lt Frentar | ||
-rvt rmaar arrritzr Egg 1.2-1 Masistum Average Planar Linear Heat Generation Rate 1-2 | |||
(MAPLEGR) vs.. Average _ Planar Esposure, Initial Core < | .[ | ||
(MAPLEGR) vs.. Average _ Planar Esposure, Initial Core < | |||
Fuel Type 8CR3219.. | Fuel Type 8CR3219.. | ||
1,2-2 | ~ | ||
(MAPLEGR) vs. Average Planar Esposure for Fuel Type | 1,2-2 Masistan Average Planar Linear Heat Generation Rate 1-3. | ||
e | (MAPLEGR) vs. Average Planar Esposure for Fuel Type 7' | ||
1.2-3 | BP8CRB2990. | ||
i e | |||
BC301A. | 1.2-3 Masistan Average Planar Linear Heat Generation Rate 1-4 | ||
l | '(MAPLEGR) vs. Average Planar Esposure for Fuel Type. | ||
1.2-5 | BC301A. | ||
1.2-6 | - 3 l | ||
l 1.2-4 Masimum Average Planar Linear Heat Generation Rate 1-5 (MAPLEGR) vs. Average Plamaa Esposure for Fuel Type BC3205. | |||
1.2-5 Masistan Average Planar Linear Beat Generation Rate 1-6 (MAPLEGR) vs. Average Planar-Espos'tre for Fuel Type NBC301G. | |||
1.2-6 Maximian Average Planar Linear Heat Generation Rate 1-7 (MAPLEGR) vs. Average Planar Esposure for Fuel Type NBC325A. | |||
( | ( | ||
2.2-2 | 2.2-1 Power Distribution Limits, MCPR vs. T at Rated Flow. | ||
2.2-3 | 2-2 2.2-2 Power Distribution Limits, MCPR vs. T at Rated Flow, 2-3 EOC-RPT Inoperable and Main Turbine Bypass Inoperable. | ||
l LaSalle County - Unit 1 | 2.2-3 Kf Facter vs. Core Flow % | ||
2-4 l | |||
l LaSalle County - Unit 1 iv, Cycle 4 l | |||
I f | I f | ||
4 CORE OPERATING LIMITE REPORT LIET OF TABLEE tsar | 4 CORE OPERATING LIMITE REPORT LIET OF TABLEE tsar | ||
* TTTr.r inenestyTreur | * TTTr.r inenestyTreur g | ||
4.2 1 Control Rod Withdrawal Block.Instrianestation Setpoints. | |||
4-1 l | |||
i P | |||
i I | |||
i l | |||
l l | l l | ||
l l | l l | ||
I. | |||
I t | I t | ||
i i | i i | ||
| Line 105: | Line 133: | ||
i: | i: | ||
1 i | 1 i | ||
j | j LaSalle County - Unit 1 y | ||
0 | . Cycle 4 | ||
_1 4 | |||
0 e, | |||
i i | i i | ||
f r | |||
i CORE OPERATIEG LIMITE REPORT , | i CORE OPERATIEG LIMITE REPORT, | ||
1.O AyynAnE PLAHR LIEE&B EEAT GENERTI N RATE f3/4.2.11 4 | |||
1.1 | 1.1 TEcERICAL EPECIFICATIGE REFERENCE Technical Specification 3.2.1. | ||
l l. | |||
The Masistas Average Planar Linear Heat Generation Rates (MAPLEGE) versus Average Planar Esposure for fuel: type | |||
8CRS219 is determined from Figure 1.2-1. | ===1.2 DESCRIPTIGE=== | ||
The Masistan Average Planar Linear Heat Generation Rates (MAPLEGE) versus Average Planar Esposure for fuel tYp* | The Masistas Average Planar Linear Heat Generation Rates (MAPLEGE) versus Average Planar Esposure for fuel: type 8CRS219 is determined from Figure 1.2-1. | ||
i The Masistan Average Planar Linear Heat Generation Rates (MAPLEGE) versus Average Planar Esposure for fuel tYp* | |||
BPSCRB299L'is determined from Figure 1.2 2. | BPSCRB299L'is determined from Figure 1.2 2. | ||
The Masista Average Planar Linear Heat Generation Rates (MAPLEGR) versus Average Planar Esposure for. fuel type BC301A is determined from Figure 1.2-3. | The Masista Average Planar Linear Heat Generation Rates (MAPLEGR) versus Average Planar Esposure for. fuel type BC301A is determined from Figure 1.2-3. | ||
The Masistas Average Planar Linear Heat Genera | The Masistas Average Planar Linear Heat Genera | ||
* ion Rates (MAPLEGR) versus Average Planar-Esposure for fuel type | * ion Rates (MAPLEGR) versus Average Planar-Esposure for fuel type BC3208 is determined from Figure 1.2-4. | ||
BC3208 is determined from Figure 1.2-4. | l The Maximum Average Planar Linear Heat Generation Rates l | ||
l | (MAPLEGR) versus Average Planar Esposure for fuel type NBC30lG is determined from Figure 1.2-5. | ||
l | l The Maximum Average Planar Linear Heat Generation Rates l | ||
i | (MAPLEGR) versus Average Planar Esposure for fuel type NBC325A is determined from Figure 1.2-6.- | ||
LaSalle County - Unit 1 | i LaSalle County - Unit 1 1-1 Cycle 4 ZWLEP | ||
i! | i! | ||
e#1ckE | l l | ||
e#1ckE 000 04 | |||
) | |||
0 R | |||
G | 00 G | ||
5 3 | |||
H L | |||
P9 A1 M2 | |||
0 | (\\ | ||
eR 0 | 0 (B | ||
a8 | 00 eR 03 0 | ||
R | t a8 | ||
) | |||
oy | R T | ||
e S | |||
n p | |||
/ | |||
oy | |||
G r | \\ | ||
r | 0 d 0 W it T 052 (M a | ||
rle e 1 | |||
n u er eF u | |||
2 s | |||
G r o | |||
o | |||
\\ | |||
00 p 1 | |||
t f 0 x a | |||
0 E e | |||
ee 2 | |||
) | |||
r r | |||
r H | |||
a u | |||
u t | |||
f/ | |||
n g | |||
r s W | |||
ao k | |||
a iF | |||
( | ( | ||
0 | 00 0000 l | ||
e p R | |||
12.! 62.0 0 | |||
P n x G | |||
22k110 0 | |||
i H | |||
111 I11 1 0 | |||
e LE LP 5 | |||
g A | |||
a 1 | |||
r r II r | |||
a a e | |||
n n v | |||
a a A | |||
) | |||
l t | |||
l s | |||
PP | |||
/ | |||
0 d | |||
0 ee N | |||
0 0 | |||
0 0 | |||
o000 0 | |||
gg 1 | |||
0N000 | |||
( | |||
0 0 | |||
e 00 a a t | |||
15 0 | |||
50n r r 1 | |||
23a s | |||
ee op v v x | |||
E AA 00 ms 0 | |||
v 5 | |||
um i xa M | |||
7 0 | |||
0 0 | |||
0 0 | |||
0 5 | |||
0 5 | |||
5 0 | |||
2 2 | |||
1 0 | |||
0 1 | 0 1 | ||
1 1 | |||
1 1 | |||
eE oc5 cy = - | |||
V* | |||
1 | c.i l | ||
eE | |||
c.i | |||
9 Maximum Average Planar Linear Heat Generation Rate (MAPLHGR;e | 9 Maximum Average Planar Linear Heat Generation Rate (MAPLHGR;e l: | ||
l: | vs Average Planar Exposure for Fuel Type BP80RB299L i | ||
g | .g 2 | ||
12.50 | E | ||
^ | |||
12.50 | |||
11.50 | #N I | ||
12.00 | |||
/ | |||
\\ | |||
y | t 11.50 | ||
/ | |||
5000 | N m | ||
/ | |||
10000 | Exposte(NWdist) | ||
2 | NAPLHGSW/ft) | ||
\\ | |||
\\ | |||
y 1 | |||
1 00 | |||
~ ca 5000 11.80 | |||
\\ | |||
i 5 10.50 10000 Iuo 1 | |||
I! 0 2 | |||
2 0 | |||
!!8: | |||
88-45000 9.20 9.50 N | |||
9.00 0 | |||
5000 10000 15000 20000 25000 30000 35000 40000 45000 50000 Average anar Exposure 'WWd/ST[ | |||
3 Figure 1.2-2 | |||
m Maximum Average | m Maximum Average Panar Linear Heat Generation Rate MAPLHGR; e | ||
E | E vs Average Planar Exposure for Fuel Type B0301 A i | ||
sg | k sg hi a | ||
/ | |||
N | |||
;;13J%T==_ | |||
/ | |||
N TlLTJ4""ma 1 | |||
4000 | / | ||
\\ | |||
b I | |||
$11 Exposse(NWd/st) | |||
S 6 | NAPLHGR(kW/ft) x N10 20b N$3 T | ||
g 3000 12.24 4000 12.56 | |||
Average | '<9 5000 12.90 10000 13.40 12500 13.43 8 | ||
,c | 35000 10.69 45000 8.79 | ||
;I Figure 1.2-3 | \\ | ||
50000 6.55 7 | |||
\\ | |||
S l | |||
6 0 | |||
5000 10000 15000 20000 25000 30000 35000 40000 45000 50000 Average anar ~xposure 'WWd/S'' | |||
3 | |||
,c;I Figure 1.2-3 | |||
Maximum Average Planar Linear Hea Generation Rate MAPLHGR; | Maximum Average Planar Linear Hea Generation Rate MAPLHGR; | ||
~ | |||
=- | |||
vs Average Planar Exposure for Fue Type B0320B | e | ||
} | |||
vs Average Planar Exposure for Fue Type B0320B i | |||
.g K= | |||
~ | |||
s | |||
=: | |||
g | g | ||
= | |||
5 THIS IS TE CIMIERVATIVE | |||
_R 13 CassoGITE or iuE LAvTim _ | |||
THIS IS TE CIMIERVATIVE | [ | ||
_R 13 | / | ||
SPECIFC CURUES False 0 IN I | |||
12 | |||
/ | |||
GE DOCHENT NEDC-33510P. l E C W MONI M ING C W _ | |||
/ | |||
DOES UTILI2E THE LATTim SPECIFIC AF AGR LIMITS. | DOES UTILI2E THE LATTim SPECIFIC AF AGR LIMITS. | ||
Rll Exposse(mwd /st) | |||
I | MAPLHGR(kW/ft) | ||
~ | |||
l I | |||
* m | 0.0 11.20 T | ||
E10 | |||
* m 11.86 N | |||
i | |||
8- | \\ | ||
,= | |||
cs 4000 12.09 5 | |||
6 | 7000 12.77 | ||
0 | %9 8000 12.90 N | ||
l 3E 10000 13.08 h | |||
12500 13.02 | |||
\\ | |||
8-35000 1012 i | |||
45000-8.55-l 50000 8.04 | |||
\\ | |||
i 6 | |||
0 5000 10000 15000 20000 25000 30000 35000-40000 45000 50000 Average Planar Ex)osure 'WWd/ST'j t | |||
IE Figure 1.2-4 | |||
Maximum Average Planar Linear Heat Generation Rate (MAPLHGR) e | Maximum Average Planar Linear Heat Generation Rate (MAPLHGR) e vs Average P anar Exposure for Fuel Type NBC301G i | ||
E C | |||
E 14 5 | |||
E 14 i | i i.... | ||
i 13 N | |||
/ | |||
\\ | |||
E''EiIC EsiE. | |||
12 | 12 | ||
\\ | |||
E iM MONIMINS CODEI i | |||
/ | |||
N DDES UTILI2E THE BATTIE i | |||
SPECIFIC Aft _HGR LIMITS. | |||
h Exposse(Ed/st) | |||
M 5000 | IIAPLNGR(kWlft) | ||
N d5,10 200 11.03 x | |||
10000 | E$g 2000 11. | ||
M 5000 12.58 | |||
\\ | |||
10000 13.35 | |||
8.99 | \\ | ||
i | |||
*8 12500 13.30 i | |||
15000 12.97 7 | |||
tm 12.33 l | |||
25000 11.70 h | |||
i 35000 10.32 | |||
\\ | |||
6 45000 8.99 x | |||
5 i | |||
0 5000 10000 15000 20000 25000~ | |||
30000 35000 40000 45000 50000 55000 60000 1 | |||
Average 'lanar Exposure 'WWd/Sj | |||
.e i | |||
Figure 1.2-5 | |||
9 | 9 a | ||
Maximum Average Planar Linear Heat Generation Rate MAPLHGR) g 5 | |||
vs Average Planar Exposure for Fuel Type NB0325A y | |||
x c | |||
14 | 14 Idia,N" g | ||
a ir | |||
Idia,N" | / | ||
= = =,, | |||
12- | 12-N 70s'R""'"'".,fi | ||
/ | |||
Y | suciric anma units. | ||
Exposwe(Ndist) | Y Exposwe(Ndist) | ||
IIAPLHGR(kmftl N | |||
7 1 | |||
1. | |||
0 q | 0 q | ||
5000 11 7 h | |||
l | 10000 12.74 | ||
\\ | |||
15000 | l 2 8 12500 13.01 | ||
\\ | |||
15000 1219 7 | |||
25000 | 20000 12.17 | ||
\\ | |||
Average | 25000 11.52 35000 10.21 6 | ||
i | 45000 8.54 1 | ||
5 i | |||
0 5000 10000 15000 20000 25000 30000 M | |||
M N | |||
M M | |||
M Average anar Enosure [WWd/S"; | |||
3 i | |||
Figure 1.2-6 | |||
ca p QPERATIES LIMITE REPORT 2.0 MINItant CRITICAL PONER RATIO f 1/4.2.31 2.1 TEcERIc1L RPECIFICATICEI REFERENCE Technical Specification 3.2.3. | |||
j 2.2 DESCRIPTIfM l | |||
i A. | |||
2.0 | Ringle Raeirenlatina Lany Operatian j | ||
j | The MCFR limit when in Slagle Recirculation Loop | ||
i A. Ringle Raeirenlatina Lany Operatian | '{ | ||
Operation is' determined from Figure 2.2-1.plus 0.01, times the Kf factor determined from Figure 2.2-3. | Operation is' determined from Figure 2.2-1.plus 0.01, times the Kf factor determined from Figure 2.2-3. | ||
l | l b. | ||
Two nacirenlation Lonp operation I | |||
The MCPR limit when.in Dual Recirculation Loop Operation is determined from Figure 2.2-1 times the Rf factor. determined from Figure 2.2-3. | The MCPR limit when.in Dual Recirculation Loop Operation is determined from Figure 2.2-1 times the Rf factor. determined from Figure 2.2-3. | ||
j c. | |||
The MCPR-limit when in Dual Recirculation Loop. | 'f%re Raeirenlatlan f. ann Onaratlan with Main Turb4na Ernans Innparahla i | ||
Operation with the Main Turbine Bypass Inoperable (per Technical Specification 3.7.10) is determined from Figure 2.2-2 times the Kf-factor determined from-3 Figure 2.2-3. | The MCPR-limit when in Dual Recirculation Loop. | ||
Operation with the Main Turbine Bypass Inoperable (per Technical Specification 3.7.10) is determined from Figure 2.2-2 times the Kf-factor determined from-3 Figure 2.2-3. | |||
Trip System (RFT) Inoperable (per Technical | d. | ||
LaSalle County - Unit 1 | Twa Raeirenimelan Loan onarmelan v'Ith end-af-cvela Raeirculmelan Pune Trin Eva*mm funnerable The MCPR limit when.in Dual Recirculation Loop j | ||
operation with the End-of-Cycle Recirculation Pump Trip System (RFT) Inoperable (per Technical l | |||
Specification 3.3.4.2) is determined from Figure 2.2-2 times the Kf factor determined from Figure 2.2-3. | |||
LaSalle County - Unit 1 2 Cycle 4 ENLEP j | |||
u | |||
Power Distribution Limits | Power Distribution Limits HCPR g | ||
1:i r- | |||
"a 1.340-- | |||
T | 3 T | ||
w | w | ||
~.-- | |||
5 | 5 g; | ||
1.320-- | 1.320-- | ||
BC301G/BC325A | BC301G/BC325A | ||
/ | |||
/ | |||
1.300 | 1.300 | ||
'y- | |||
1.280 - | !y 2: | ||
8CR219/BP805299L | M | ||
/ | |||
1.280 - | |||
8CR219/BP805299L | |||
----------.- / *' | |||
/ | |||
1.260 - | 1.260 - | ||
BC301A/BC3208 1.240 | BC301A/BC3208 1.240 | ||
.687 | |||
WC)R versusT at Rated : low Figure 2.2-1 | .700 | ||
.720 | |||
.740 | |||
.760. | |||
.780 | |||
.800 | |||
.820 | |||
.840 | |||
.860 y | |||
WC)R versusT at Rated : low | |||
^ | |||
Figure 2.2-1 | |||
~ | |||
Power DistributionI.imits | Power DistributionI.imits MCPR - E00S | ||
MCPR - E00S | ,R h | ||
,r | (All fuel types) | ||
,r 1.380- | |||
) | |||
5 | 1 | ||
,c 5 | |||
1.360 | a; | ||
I | / | ||
1.360 - | |||
1.340 - | I i | ||
/ | |||
E00-RPTInoperable, | |||
1 1.340 - | |||
1.320= | I i | ||
Main Turbine Bypassinoperable | / | ||
m 25 | |||
/ | |||
,/- | |||
i | l4 | ||
y | =s 1.320= | ||
/ | |||
'y Main Turbine Bypassinoperable i | |||
,/ | |||
l i | |||
1.300 - | |||
y 1.280 lI | |||
.687 | |||
.700 | |||
.720 | |||
.740 | |||
.760 | |||
.780 | |||
.800 | |||
.820 | |||
.840 | |||
.860 WCPR versus t'a Ra"ed flow l | |||
Figure 2.2-2 | |||
Core Operating Limits Reperi i | Core Operating Limits Reperi 8 | ||
i a | |||
/ | |||
l | / | ||
l | l | ||
/ | |||
l l | |||
8 | |||
/ | |||
wE l | |||
2 | |||
u | .i | ||
/ | |||
o | t | ||
-g | |||
/ | |||
l | / | ||
/ | |||
u | |||
./ | |||
=- | |||
o o | |||
e | |||
/ | |||
^ | |||
e | l id! | ||
o e | l | ||
l | ) | ||
i c'> | |||
l g/ | |||
/ | |||
a o | |||
l t | |||
5ll f g= | |||
8 " cw | |||
<a u | |||
vc 2.u a.a | |||
/ | |||
/ | |||
-w | |||
/ | |||
e | |||
=n | |||
= | |||
o e l | |||
l u | |||
E | |||
/ | |||
=o l | |||
M i | |||
/ | |||
d Ei! | |||
e | e | ||
/ | |||
/ | |||
/ | |||
/ | |||
/ | |||
l m | |||
/ | |||
/ | |||
3 9 | 3 9 | ||
8 8 | 8 8 | ||
M 8 | |||
LaSale-Unit 1 | E o | ||
r) | |||
LaSale-Unit 1 2-4 e 4 Cycl - | |||
._- _-_--___ -__ _, __~ __ _ - _, | |||
J] | J] | ||
j | j | ||
-1 J | |||
CORE OPERATING LIMITE RDORT | |||
.j i | |||
3.1 | 3.O LINEAR EFAT GEEEthTIGE BATE i3/4.2.$ } | ||
3.2 | 3.1 TREENIciL EFECIFICATI N REFFRENcp f | ||
Technical Specification 3.2.4. | |||
3.2 DESCRIPTIM a. | |||
The LEGE limit is 13.4 kw/ft for fuel types 1. | |||
t | 8CES219-2. | ||
BPOCES299L t | |||
b. | |||
The LEGR limit is 14.4 kw/ft for. fuel typees 1.- | |||
BC301A 2. | |||
l | MC3208 3. | ||
NBC301G i | |||
6 | 4. | ||
-NBC325A l | |||
l M | l l | ||
i 6 | |||
LaSalle County - Unit 1 3-1 Cycle 4 l | |||
l M | |||
4 | 4 | ||
.i | |||
.s | |||
'l l | |||
Cone OPERATING LIMITE RESORT l | |||
Technical Specification Table 3.3.6 2. | 4.O CCETROL ROD MITEDRAMAL Bract IMRTEEBerTkTIGE I1/4.3.8) 4.1 TECEffcAL EFECIFIc1TIGr REFERENCE Technical Specification Table 3.3.6 2. | ||
4.2 | 4.2 DESC117 Tim a. | ||
The Rod Block Monitor Upscale Instrumentation Setpoints are, | |||
determined from the relationships shown in Table 4.2-1. | determined from the relationships shown in Table 4.2-1. | ||
M cmTaot non WnuDanmar. nr.rrr fuRTumerraTIGr SETroInTs | M cmTaot non WnuDanmar. nr.rrr fuRTumerraTIGr SETroInTs TRIP FmicTIGE TRIP SETFOINT ALIZEfARLE VAIRE 1.0 nod BLOCI MaffTOR A. | ||
UPSCALE | |||
A. | .v | ||
:i | :i 1. | ||
Two Recirculation 1 0.66 W + 41 %** | |||
Loop Operation | 1 0.66 W + 44 s** ~ | ||
Loop Operation 2. | |||
Single Recirculation 1 0.66 W + 35.7%** 1 0.66 W + 38.7%* | |||
Loop Operation | Loop Operation | ||
**- Clamped, with an allowable value not to escoed the allowable value for recirculation loop flow (W) of 100%. | |||
I LaSalle County - Unit 1 4-1 | |||
. Cycle-4 | |||
_,}} | |||
Latest revision as of 04:30, 21 December 2024
| ML20011D968 | |
| Person / Time | |
|---|---|
| Site: | LaSalle |
| Issue date: | 12/31/1989 |
| From: | COMMONWEALTH EDISON CO. |
| To: | |
| Shared Package | |
| ML20011D967 | List: |
| References | |
| NUDOCS 9001030253 | |
| Download: ML20011D968 (19) | |
Text
.
y1 OS Core Operattag Limits Report for LaSalle County Station Unit 1, Reload 3 (Cycle 4) i
. )
9001030253 891222 N'DR ADOCK 05000373 p
PDC 2lIREP
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}
t CORE OPERATING LIMITE REPORT t
Iannancz or enamazz sinantr 5
i l
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Affected Affected Date l
Reetlen P--
=
Bi-- ev a f ek===a i
111 111-Orlain=1 famna (cvela 4) 12/89 i
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t 4
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T LaSalle County - Unit 1 i
Cycle 4 1
.s j
+
3 l
i J
CORE OPERATING LIMITE RDORT TABLE OF CGfTENTE t
F.SSR 111
....~.:......
REFERENCES.
iv LIST OF FIGURE 8 v,
LIST OF TABLES.
1.0 AVERAGE PLANAR LINEAR REAT GENERATICII RATE (3/4.2.1).
1-1 1-1 1.1 Technical Specification Reference..
1-1 1.2-Description.
4 2.0 MINIMUM CRITICAL PONER RATIO (3/4.2.3).
2-1 2-1 2.1 Technical Specification Reference.
2-1 2.2 Description.
3.0 LINEAR NEAT GI2tERATICEI RATE (3/4.2.4) 3-1 3.1 Technical Specificat' ion Reference.
3-1 3.3 Description.
3 '
4.0 CCEtTROL ROD WITHDRAWAL BLOCK INSTRUNI2tTATION (3/4.3.6).
4-1 4-1 4.1 Technical. Specification Reference.
4-1 4.2 Description.
LaSalle County - Unit 1 11 Cycle 4 i
i 1
i,
- l
I 1
s-h COSE OPERATIEG LIMITE REPORT REFERENCEE f
1.
Comunonwealth Edison Company Docket No. 50-374, LaSalle County Station, Unit 1 racility Operating License, License No. NPF-11.
2.
Letter from D. M. Crutchfield to All Power Reactor Licensees and Applicants, Generic Letter 88-16s.Concernitg the Removal of' Cycle-Specific r
Parsmoter Limits from Technical Specifications, dated October 4, 1988.
t 3.
Supplemental Reload License Submittal for LaSalle County Station, Unit 1.
Reload 3 (Cycle 4), 23A5972, Rev. O, June 1989.
4.
LaSalle County Station, Units 1 and 2, SAFER /GESTR LOCA Loss-of-Coolant-Accident Analysis, NEDC, 31510P (latest approved version).
5.
General Electric Standard Application for Reactor Fuel (GESTAR),
NEDE-24011-P-A (latest approved version).
l 1
i LaSalle County - Unit 1 111 Cycle 4 l
ZNLEP
~
i i
a I
core OPERATING LIMITS REPORT LIET or PfaumEE
~
lt Frentar
-rvt rmaar arrritzr Egg 1.2-1 Masistum Average Planar Linear Heat Generation Rate 1-2
.[
(MAPLEGR) vs.. Average _ Planar Esposure, Initial Core <
Fuel Type 8CR3219..
~
1,2-2 Masistan Average Planar Linear Heat Generation Rate 1-3.
(MAPLEGR) vs. Average Planar Esposure for Fuel Type 7'
BP8CRB2990.
i e
1.2-3 Masistan Average Planar Linear Heat Generation Rate 1-4
'(MAPLEGR) vs. Average Planar Esposure for Fuel Type.
BC301A.
- 3 l
l 1.2-4 Masimum Average Planar Linear Heat Generation Rate 1-5 (MAPLEGR) vs. Average Plamaa Esposure for Fuel Type BC3205.
1.2-5 Masistan Average Planar Linear Beat Generation Rate 1-6 (MAPLEGR) vs. Average Planar-Espos'tre for Fuel Type NBC301G.
1.2-6 Maximian Average Planar Linear Heat Generation Rate 1-7 (MAPLEGR) vs. Average Planar Esposure for Fuel Type NBC325A.
(
2.2-1 Power Distribution Limits, MCPR vs. T at Rated Flow.
2-2 2.2-2 Power Distribution Limits, MCPR vs. T at Rated Flow, 2-3 EOC-RPT Inoperable and Main Turbine Bypass Inoperable.
2.2-3 Kf Facter vs. Core Flow %
2-4 l
l LaSalle County - Unit 1 iv, Cycle 4 l
I f
4 CORE OPERATING LIMITE REPORT LIET OF TABLEE tsar
- TTTr.r inenestyTreur g
4.2 1 Control Rod Withdrawal Block.Instrianestation Setpoints.
4-1 l
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1 i
j LaSalle County - Unit 1 y
. Cycle 4
_1 4
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i i
f r
i CORE OPERATIEG LIMITE REPORT,
1.O AyynAnE PLAHR LIEE&B EEAT GENERTI N RATE f3/4.2.11 4
1.1 TEcERICAL EPECIFICATIGE REFERENCE Technical Specification 3.2.1.
l l.
1.2 DESCRIPTIGE
The Masistas Average Planar Linear Heat Generation Rates (MAPLEGE) versus Average Planar Esposure for fuel: type 8CRS219 is determined from Figure 1.2-1.
i The Masistan Average Planar Linear Heat Generation Rates (MAPLEGE) versus Average Planar Esposure for fuel tYp*
BPSCRB299L'is determined from Figure 1.2 2.
The Masista Average Planar Linear Heat Generation Rates (MAPLEGR) versus Average Planar Esposure for. fuel type BC301A is determined from Figure 1.2-3.
The Masistas Average Planar Linear Heat Genera
- ion Rates (MAPLEGR) versus Average Planar-Esposure for fuel type BC3208 is determined from Figure 1.2-4.
l The Maximum Average Planar Linear Heat Generation Rates l
(MAPLEGR) versus Average Planar Esposure for fuel type NBC30lG is determined from Figure 1.2-5.
l The Maximum Average Planar Linear Heat Generation Rates l
(MAPLEGR) versus Average Planar Esposure for fuel type NBC325A is determined from Figure 1.2-6.-
i LaSalle County - Unit 1 1-1 Cycle 4 ZWLEP
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00 G
5 3
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P9 A1 M2
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0 E e
ee 2
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r r
r H
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00 0000 l
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12.! 62.0 0
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111 I11 1 0
e LE LP 5
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gg 1
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e 00 a a t
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23a s
ee op v v x
E AA 00 ms 0
v 5
um i xa M
7 0
0 0
0 0
0 5
0 5
5 0
2 2
1 0
0 1
1 1
1 1
eE oc5 cy = -
V*
c.i l
9 Maximum Average Planar Linear Heat Generation Rate (MAPLHGR;e l:
vs Average Planar Exposure for Fuel Type BP80RB299L i
.g 2
E
^
12.50
- N I
12.00
/
\\
t 11.50
/
N m
/
Exposte(NWdist)
NAPLHGSW/ft)
\\
\\
y 1
1 00
~ ca 5000 11.80
\\
i 5 10.50 10000 Iuo 1
I! 0 2
2 0
!!8:
88-45000 9.20 9.50 N
9.00 0
5000 10000 15000 20000 25000 30000 35000 40000 45000 50000 Average anar Exposure 'WWd/ST[
3 Figure 1.2-2
m Maximum Average Panar Linear Heat Generation Rate MAPLHGR; e
E vs Average Planar Exposure for Fuel Type B0301 A i
k sg hi a
/
N
- 13J%T==_
/
N TlLTJ4""ma 1
/
\\
b I
$11 Exposse(NWd/st)
NAPLHGR(kW/ft) x N10 20b N$3 T
g 3000 12.24 4000 12.56
'<9 5000 12.90 10000 13.40 12500 13.43 8
35000 10.69 45000 8.79
\\
50000 6.55 7
\\
S l
6 0
5000 10000 15000 20000 25000 30000 35000 40000 45000 50000 Average anar ~xposure 'WWd/S
3
,c;I Figure 1.2-3
Maximum Average Planar Linear Hea Generation Rate MAPLHGR;
~
=-
e
}
vs Average Planar Exposure for Fue Type B0320B i
.g K=
~
s
=:
g
=
5 THIS IS TE CIMIERVATIVE
_R 13 CassoGITE or iuE LAvTim _
[
/
SPECIFC CURUES False 0 IN I
12
/
GE DOCHENT NEDC-33510P. l E C W MONI M ING C W _
/
DOES UTILI2E THE LATTim SPECIFIC AF AGR LIMITS.
Rll Exposse(mwd /st)
MAPLHGR(kW/ft)
~
l I
0.0 11.20 T
E10
- m 11.86 N
i
\\
,=
cs 4000 12.09 5
7000 12.77
%9 8000 12.90 N
l 3E 10000 13.08 h
12500 13.02
\\
8-35000 1012 i
45000-8.55-l 50000 8.04
\\
i 6
0 5000 10000 15000 20000 25000 30000 35000-40000 45000 50000 Average Planar Ex)osure 'WWd/ST'j t
IE Figure 1.2-4
Maximum Average Planar Linear Heat Generation Rate (MAPLHGR) e vs Average P anar Exposure for Fuel Type NBC301G i
E C
E 14 5
i i....
i 13 N
/
\\
EEiIC EsiE.
12
\\
E iM MONIMINS CODEI i
/
N DDES UTILI2E THE BATTIE i
SPECIFIC Aft _HGR LIMITS.
h Exposse(Ed/st)
IIAPLNGR(kWlft)
N d5,10 200 11.03 x
E$g 2000 11.
M 5000 12.58
\\
10000 13.35
\\
i
- 8 12500 13.30 i
15000 12.97 7
tm 12.33 l
25000 11.70 h
i 35000 10.32
\\
6 45000 8.99 x
5 i
0 5000 10000 15000 20000 25000~
30000 35000 40000 45000 50000 55000 60000 1
Average 'lanar Exposure 'WWd/Sj
.e i
Figure 1.2-5
9 a
Maximum Average Planar Linear Heat Generation Rate MAPLHGR) g 5
vs Average Planar Exposure for Fuel Type NB0325A y
x c
14 Idia,N" g
a ir
/
= = =,,
12-N 70s'R""'"'".,fi
/
suciric anma units.
Y Exposwe(Ndist)
IIAPLHGR(kmftl N
7 1
1.
0 q
5000 11 7 h
10000 12.74
\\
l 2 8 12500 13.01
\\
15000 1219 7
20000 12.17
\\
25000 11.52 35000 10.21 6
45000 8.54 1
5 i
0 5000 10000 15000 20000 25000 30000 M
M N
M M
M Average anar Enosure [WWd/S";
3 i
Figure 1.2-6
ca p QPERATIES LIMITE REPORT 2.0 MINItant CRITICAL PONER RATIO f 1/4.2.31 2.1 TEcERIc1L RPECIFICATICEI REFERENCE Technical Specification 3.2.3.
j 2.2 DESCRIPTIfM l
i A.
Ringle Raeirenlatina Lany Operatian j
The MCFR limit when in Slagle Recirculation Loop
'{
Operation is' determined from Figure 2.2-1.plus 0.01, times the Kf factor determined from Figure 2.2-3.
l b.
Two nacirenlation Lonp operation I
The MCPR limit when.in Dual Recirculation Loop Operation is determined from Figure 2.2-1 times the Rf factor. determined from Figure 2.2-3.
j c.
'f%re Raeirenlatlan f. ann Onaratlan with Main Turb4na Ernans Innparahla i
The MCPR-limit when in Dual Recirculation Loop.
Operation with the Main Turbine Bypass Inoperable (per Technical Specification 3.7.10) is determined from Figure 2.2-2 times the Kf-factor determined from-3 Figure 2.2-3.
d.
Twa Raeirenimelan Loan onarmelan v'Ith end-af-cvela Raeirculmelan Pune Trin Eva*mm funnerable The MCPR limit when.in Dual Recirculation Loop j
operation with the End-of-Cycle Recirculation Pump Trip System (RFT) Inoperable (per Technical l
Specification 3.3.4.2) is determined from Figure 2.2-2 times the Kf factor determined from Figure 2.2-3.
LaSalle County - Unit 1 2 Cycle 4 ENLEP j
u
Power Distribution Limits HCPR g
1:i r-
"a 1.340--
3 T
w
~.--
5 g;
1.320--
BC301G/BC325A
/
/
1.300
'y-
!y 2:
M
/
1.280 -
8CR219/BP805299L
.- / *'
/
1.260 -
BC301A/BC3208 1.240
.687
.700
.720
.740
.760.
.780
.800
.820
.840
.860 y
WC)R versusT at Rated : low
^
Figure 2.2-1
~
Power DistributionI.imits MCPR - E00S
,R h
(All fuel types)
,r 1.380-
)
1
,c 5
a;
/
1.360 -
I i
/
E00-RPTInoperable,
1 1.340 -
I i
/
m 25
/
,/-
l4
s 1.320
/
'y Main Turbine Bypassinoperable i
,/
l i
1.300 -
y 1.280 lI
.687
.700
.720
.740
.760
.780
.800
.820
.840
.860 WCPR versus t'a Ra"ed flow l
Figure 2.2-2
Core Operating Limits Reperi 8
i a
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/
l
/
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8
/
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2
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/
t
-g
/
/
/
u
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e
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^
l id!
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l t
5ll f g=
8 " cw
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vc 2.u a.a
/
/
-w
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e
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=
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l u
E
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/
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3 9
8 8
M 8
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LaSale-Unit 1 2-4 e 4 Cycl -
._- _-_--___ -__ _, __~ __ _ - _,
J]
j
-1 J
CORE OPERATING LIMITE RDORT
.j i
3.O LINEAR EFAT GEEEthTIGE BATE i3/4.2.$ }
3.1 TREENIciL EFECIFICATI N REFFRENcp f
Technical Specification 3.2.4.
3.2 DESCRIPTIM a.
The LEGE limit is 13.4 kw/ft for fuel types 1.
8CES219-2.
BPOCES299L t
b.
The LEGR limit is 14.4 kw/ft for. fuel typees 1.-
BC301A 2.
MC3208 3.
NBC301G i
4.
-NBC325A l
l l
i 6
LaSalle County - Unit 1 3-1 Cycle 4 l
l M
4
.i
.s
'l l
Cone OPERATING LIMITE RESORT l
4.O CCETROL ROD MITEDRAMAL Bract IMRTEEBerTkTIGE I1/4.3.8) 4.1 TECEffcAL EFECIFIc1TIGr REFERENCE Technical Specification Table 3.3.6 2.
4.2 DESC117 Tim a.
The Rod Block Monitor Upscale Instrumentation Setpoints are,
determined from the relationships shown in Table 4.2-1.
M cmTaot non WnuDanmar. nr.rrr fuRTumerraTIGr SETroInTs TRIP FmicTIGE TRIP SETFOINT ALIZEfARLE VAIRE 1.0 nod BLOCI MaffTOR A.
UPSCALE
.v
- i 1.
Two Recirculation 1 0.66 W + 41 %**
1 0.66 W + 44 s** ~
Loop Operation 2.
Single Recirculation 1 0.66 W + 35.7%** 1 0.66 W + 38.7%*
Loop Operation
- - Clamped, with an allowable value not to escoed the allowable value for recirculation loop flow (W) of 100%.
I LaSalle County - Unit 1 4-1
. Cycle-4
_,